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首页> 外文期刊>Endocrinology >Changes in hypothalamic expression of the Lin28/let-7 system and related MicroRNAs during postnatal maturation and after experimental manipulations of puberty
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Changes in hypothalamic expression of the Lin28/let-7 system and related MicroRNAs during postnatal maturation and after experimental manipulations of puberty

机译:出生后和青春期实验操作后,Lin28 / let-7系统及相关MicroRNA的下丘脑表达的变化

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摘要

Lin28 and Lin28b are related RNA-binding proteins that inhibit the maturation of miRNAs of the let-7 family and participate in the control of cellular stemness and early embryonic development. Considerable interest has arisen recently concerning other physiological roles of the Lin28/let-7 axis, including its potential involvement in the control of puberty, as suggested by genome-wide association studies and functional genomics. We report herein the expression profiles of Lin28 and let-7 members in the rat hypothalamus during postnatal maturation and in selected models of altered puberty. The expression patterns of c-Myc (upstream positive regulator of Lin28), mir-145 (negative regulator of c-Myc), and mir-132 and mir-9 (putative miRNA repressors of Lin28, predicted by bioinformatic algorithms) were also explored. In male and female rats, Lin28, Lin28b, and c-Myc mRNAs displayed very high hypothalamic expression during the neonatal period, markedly decreased during the infantile-to-juvenile transition and reached minimal levels before/around puberty. A similar puberty-related decline was observed for Lin28b in monkey hypothalamus but not in the rat cortex, suggesting species conservation and tissue specificity. Conversely, let-7a, let-7b, mir-132, and mir-145, but not mir-9, showed opposite expression profiles. Perturbation of brain sex differentiation and puberty, by neonatal treatment with estrogen or androgen, altered the expression ratios of Lin28/let-7 at the time of puberty. Changes in the c-Myc/Lin28b/let-7 pathway were also detected in models of delayed puberty linked to early photoperiod manipulation and, to a lesser extent, postnatal underfeeding or chronic subnutrition. Altogether, our data are the first to document dramatic changes in the expression of the Lin28/let-7 axis in the rat hypothalamus during the postnatal maturation and after different manipulations that disturb puberty, thus suggesting the potential involvement of developmental changes in hypothalamic Lin28/let-7 expression in the mechanisms permitting/leading to puberty onset.
机译:Lin28和Lin28b是相关的RNA结合蛋白,可抑制let-7家族的miRNA的成熟并参与细胞干和早期胚胎发育的控制。最近,人们对Lin28 / let-7轴的其他生理作用产生了极大的兴趣,包括全基因组关联研究和功能基因组学所暗示的潜在参与青春期控制。我们在这里报告了Lin28和let-7成员在大鼠下丘脑在产后成熟期间和青春期改变的选定模型中的表达谱。还探讨了c-Myc(Lin28的上游正调控子),mir-145(c-Myc的负调控子)以及mir-132和mir-9(通过生物信息学算法预测的Lin28的miRNA阻遏物)的表达模式。 。在雄性和雌性大鼠中,Lin28,Lin28b和c-Myc mRNA在新生儿期表现出非常高的下丘脑表达,在婴儿至青少年的过渡期明显降低,并在青春期前后达到最低水平。在猴下丘脑中观察到Lin28b相似的青春期相关下降,但在大鼠皮层中未观察到Lin28b下降,表明物种保守性和组织特异性。相反,let-7a,let-7b,mir-132和mir-145(而不是mir-9)显示相反的表达谱。通过用雌激素或雄激素进行新生儿治疗,大脑性别分化和青春期的摄动改变了青春期时Lin28 / let-7的表达率。在早期青春期延迟模型中也检测到了c-Myc / Lin28b / let-7途径的变化,早期青春期模型与早期光周期操作有关,而在较小程度上则与出生后食物不足或慢性营养不良有关。总的来说,我们的数据是第一个记录出生后成熟期间以及在干扰青春期的不同操作后大鼠下丘脑中Lin28 / let-7轴表达急剧变化的数据,因此表明下丘脑Lin28 / let-7在允许/导致青春期发作的机制中表达。

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